Operators identify defects and quality; the optimization system manages positioning, calculation and the cutting sequence through one touchscreen workflow.
Salvamac SalvaPush 2000
Salvamac optimization platformSalvaPush 2000
A numerically controlled push-feed optimizing saw that converts marked defects, quality classes and required lengths into a controlled cutting sequence designed to improve material yield.
Turn marked stock into optimized output.
SalvaPush 2000 is Salvamac’s automatic optimizing crosscut saw with a programmable pusher. The operator marks defects and quality classes, SALVA-OPTIM calculates the cutting combination, and the servo-driven feed system positions the board for automatic cutting.
A reinforced double-steel frame, heavy pusher carriage, toothed-belt transmission and hardened guides support industrial push-feed production.
Rear protection, smart pressing hood, enclosed cutting group, electro-pneumatic alignment and controlled pusher speed structure the operator workflow.
SALVAPUSH 2000 / OPTIMIZING LINE
Numerical control from infeed to cut.
The pusher carriage is driven by a brushless constant-torque servo motor, with computer and servo communication through EtherCAT. A 25-degree inclined worktable keeps the board referenced during loading, while laser and luminescence reading identify board presence and fluorescent marks.
Machine and automation gallery.
The core SalvaPush platform combines programmable push-feed positioning, a guarded cutting group and integrated software. Downstream handling can be extended with a tilting discharge table, length selector, ejection and sorting systems.
Technical data with source discipline.
Optimization, positioning and cutting in one managed workflow.
SalvaPush 2000 is designed around the production decisions that consume time at a manual stop saw: defect interpretation, length selection, positioning and result tracking.
SALVA-OPTIM yield control
The operator enters required lengths, priorities and quality classes; the software calculates the cutting combination and records production results.
Servo-driven push positioning
A brushless servo motor, EtherCAT communication and reinforced toothed-belt transmission provide controlled positioning across the selected infeed length.
Defect and quality reading
Laser board detection and luminescence reading convert fluorescent marks into optimization inputs for defect removal and quality separation.
A practical step beyond manual positioning and cut lists.
Required lengths, priorities, defects and quality classes are evaluated by software instead of being resolved manually at the saw.
The servo-driven carriage moves the board to each calculated cut position across infeed versions up to 6100 mm.
Real-time results, statistics, diagnostics and video messages give the operator and production team a clearer view of the cutting process.
A tilting table or length selector can automate collection, sorting, recovery and waste separation after cutting.
Built for production where yield and repeatability matter.
SalvaPush 2000 is strongest where solid-wood stock is processed into multiple finished lengths, defects must be removed and the operation benefits from programmable push-feed positioning.
Window and door components
Optimize long solid-wood blanks into rails, stiles and frame components while removing defects and separating quality classes.
Furniture component production
Convert random or fixed stock lengths into repeatable parts for legs, frames, rails and other downstream machining operations.
Joinery and millwork
Manage mixed finished lengths and marked defects across recurring architectural and custom-production cut lists.
Pallet and packaging production
Optimize boards into multiple packaging lengths and configure downstream ejection or sorting around production categories.
Glue-up and finger-joint preparation
Remove defects and produce controlled component lengths before finger joining, edge gluing or lamination processes.
Secondary sawmill processing
Increase recovery from dried or dimensioned stock where defects, quality classes and multiple target lengths drive yield.
Download the SalvaPush 2000 technical overview.
This Titan-prepared data sheet consolidates the current manufacturer specifications, SALVA-OPTIM workflow, pusher architecture and downstream automation options used to qualify a SalvaPush project.
Download data sheet
From marked stock to managed output.
The complete SalvaPush 2000 configuration combines inclined loading, numerical-control pushing, defect and quality reading, automatic cutting and configurable downstream handling in one production cell.
Request a SalvaPush 2000 quote.
Send Titan the incoming stock, target lengths, defect strategy, quality classes, daily volume and downstream handling requirements. We will qualify the infeed length, blade package, pusher version and discharge automation.